Giuseppe Mingione is a Full Professor in the Department of Mathematical, Physical and Computer Sciences at the University of Parma, Italy. His research spans Calculus of Variations , Elliptic and Parabolic PDEs , and Nonlinear Potential Theory . He has delivered over 25 lecture series and 180+ invited talks globally. PhD in Mathematics, University of Naples Federico II (1999) Degree in Mathematics, University of Naples Federico II (1994) His work focuses on regularity theory for nonlinear PDEs, nonuniform ellipticity, and geometric analysis. Publications include breakthroughs in Schauder estimates, double phase problems, and nonlocal systems. He has received the Amerio Prize (2016) , Caccioppoli Prize (2010) , and Stampacchia Medal (2006) . Recent articles address nonuniform ellipticity, nonlocal PDEs, and gradient regularity. Awards include the Order of the Merit of the Italian Republic (2017) and Von Staudt Chair (2004) . He serves on editorial boards for international journals.
Cristiana De Filippis serves as Associate Professor in the Department of Mathematical, Physical and Computer Sciences at the University of Parma. Her academic journey includes a Bachelor's degree from the University of Torino (2014), Master's from University of Milano-Bicocca (2016), and PhD from the University of Oxford (2020), followed by a tenure-track position at Parma since 2021 and habilitation to full professorship in 2023. Her research focuses on Mathematical Analysis , particularly Regularity Theory for elliptic and parabolic partial differential equations and the Calculus of Variations . She investigates fundamental properties of solutions to nonlinear PDEs, including sharp growth conditions, nonuniform ellipticity, and double-phase functionals. Her work bridges abstract mathematical theory with applications in physics and engineering through rigorous analysis of solution behavior. Analysis of her 15 most recent publications reveals a concentrated research program in nonuniformly elliptic systems (2022-2025), double-phase variational problems (2023-2024), and gradient regularity under irregular coefficients (2020-2024). Key contributions include establishing sharp growth rates in Schauder theory and developing novel techniques for nearly linear growth conditions. European Mathematical Society Prize 2024 Bartolozzi Prize 2023 (Italian Mathematical Union) Iapichino Prize 2020 (Accademia dei Lincei) Premio per la Cultura Mediterranea 2023 G-Research Prize 2019 Forbes 100 Most Successful Italian Women 2023 European Mathematical Society Young Academy (inaugural cohort) Professor De Filippis has delivered invited lectures at prestigious institutions including Erwin Schrödinger Institute (2025), Charles University Prague (2024), and Accademia Nazionale dei Lincei (2022). She teaches Mathematical Analysis courses for Computer Science, Geological Sciences, and Management Engineering programs at undergraduate level. Her research is supported through multiple international collaborations, particularly with Giuseppe Mingione at Parma and researchers at European institutions.
Professor Martin Peifer is a computational cancer genomics researcher at the University of Cologne, where he leads the Department of Translational Genomics. He serves as Principal Investigator of the Peifer Lab, which focuses on developing computational methods to analyze cancer genome sequencing data. His work is deeply integrated with the Center for Data and Simulation Science and he is an active member of the International Cancer Genome Consortium and the Pan-Cancer Analysis of Whole Genomes project. Peifer's research interests center on computational approaches to understanding cancer biology, with particular emphasis on tumor evolution and genome instability mechanisms. His lab develops methods to analyze somatic genome alterations including point mutations, copy number changes, and rearrangements. They also create computational tools for integrative genome analyses, tumor evolution reconstruction, and single-cell sequencing data analysis (both RNA and DNA). His interdisciplinary team applies high-performance computing and machine learning to interpret complex cancer sequencing data, aiming to better understand tumorigenesis, clonal evolution, and therapy resistance. Analysis of Peifer's extensive publication record reveals a strong focus on neuroblastoma and lung cancer genomics, with particular attention to tumor evolution patterns and genomic instability mechanisms. His work spans multiple cancer types but maintains consistent themes of computational methodology development and application to understand cancer progression and treatment resistance. The publications demonstrate increasing sophistication in analyzing intra-tumor heterogeneity and clonal dynamics over time. Peifer leads an active research group including postdoctoral fellows (Joel Kaufmann, Dr. Stephanie Pabel, Agnieszka Rumińska) and PhD students (Magdalena Seiffert, Justinas Valiulis). His lab is involved in the Collaborative Research Center 1399 focused on Mechanisms of Drug Sensitivity and Resistance in Small Cell Lung Cancer, indicating significant grant funding and collaborative research efforts. The Peifer Lab operates at the intersection of computational biology and cancer research, maintaining an interdisciplinary approach that combines bioinformatics, machine learning, and high-performance computing to address complex questions in cancer genomics. Their work has significant implications for understanding cancer evolution and developing more effective treatment strategies.
Dr Ares Llop Naya serves as an Affiliated Catalan Lecturer in the Department of Spanish and Portuguese within the Faculty of Modern and Medieval Languages and Linguistics at the University of Cambridge, while holding the Batista i Roca Fellowship at Fitzwilliam College. Her academic profile bridges theoretical linguistics with practical language pedagogy, focusing on Romance language structures and their educational applications. Her research centers on microsyntactic variation in Romance languages, particularly examining negation systems and syntactic phenomena in Catalan and Pyrenean varieties through both diachronic and synchronic lenses. She actively integrates theoretical insights into language teaching methodology, specializing in Catalan and Spanish pedagogy for both native and foreign language contexts. This dual focus manifests in her publications spanning syntactic theory, dialectology, and innovative language teaching approaches that address contemporary classroom challenges. Analysis of her publication trajectory reveals consistent thematic concentration on Romance microvariation, with recent work expanding into pedagogical applications. Her scholarship demonstrates methodological diversity—combining linguistic atlas data, corpus analysis, and classroom research—while maintaining core focus on Catalan syntax and its implications for language acquisition theory. The Pyrenean linguistic corridor remains a persistent geographical anchor across her diachronic and synchronic investigations. Dr Llop Naya's scholarly contributions have been recognized through prestigious awards: Joan Solà International Prize in Catalan Philology for her monograph on Romance negation systems Her teaching portfolio encompasses advanced courses in Romance linguistics, historical syntax, and sociolinguistics, with particular emphasis on translating theoretical frameworks into practical classroom resources. While specific grant funding details aren't publicly documented, her work consistently addresses real-world language education challenges through collaborative projects like the Microvariació.cat initiative. She contributes to the Microvariació.cat project—a digital repository documenting syntactic variation across Catalan dialects—which serves as both research infrastructure and pedagogical resource. This initiative exemplifies her commitment to creating practical applications from theoretical linguistic research while preserving endangered dialectal features of the Romance continuum.
Robin Neumayer is an Assistant Professor in the Department of Mathematical Sciences at Carnegie Mellon University. Her research focuses on the intersection of calculus of variations, partial differential equations (PDE), and geometric analysis, with a particular emphasis on stability and regularity in geometric inequalities. Education: Ph.D. in Mathematics, University of Texas at Austin, supervised by Alessio Figalli and Francesco Maggi. Her work explores problems related to Sobolev inequalities, isoperimetric problems, scalar curvature, and free boundary phenomena. Recent publications highlight collaborations with leading researchers and address topics such as quantitative stability, anisotropic geometries, and nonlinear PDE. Scientific Awards and Fellowships: NSF Grant DMS-2155054 (2022-2025) RTG Postdoctoral Fellow at Northwestern University (2017-18, 2019-21) Institute for Advanced Study member (2018-19) She teaches courses such as Introduction to Differential Equations and maintains active research collaborations with institutions like the Center for Nonlinear Analysis.
Prof. Dr.-Ing. Jürgen Teich is a full Professor and Chair for Hardware-Software Co-Design at the Department of Computer Science, Friedrich Alexander University Erlangen-Nuremberg (FAU). He serves as Head of Department Computer Science and Vice Dean of the Technical Faculty since August 2024, and has been Speaker of the FAU Research Center Embedded System Initiative (FAU ESI) since 2023. His educational background includes: Diploma degree in Electrical Engineering, University of Kaiserslautern (1989) Dr.-Ing. degree in Electrical Engineering, University of Saarland (1993) Habilitation (PD Dr.-Ing.) entitled "Synthesis and Optimization of Digital Hardware/Software Systems" (1996) Prof. Teich's research focuses on Embedded Systems , Invasive Computing , Hardware-Software Co-Design , and Reconfigurable Computing . His work spans from theoretical foundations to practical implementations, with particular emphasis on resource-constrained systems, many-core architectures, and energy-efficient computing. He has pioneered research in invasive computing paradigms that enable more efficient use of many-core processors by allowing applications to dynamically claim resources. His recent publications reveal a strong trend toward energy-efficient AI deployment on embedded devices , security of embedded systems , and novel memory technologies . There's a clear focus on practical implementations of machine learning on microcontrollers (TinyML), hardware acceleration for data processing, and innovative approaches to power management in self-powered systems. Among his notable scientific awards are: IEEE Fellow (since 2018) Member of Academia Europaea, Section Informatics (since 2011) Member of the National Academy of Science and Engineering (acatech) (since 2018) Member of the German Society of Humboldtians (since 2021) Prof. Teich has been Principal Investigator for numerous DFG-funded projects including SFB/Transregio 89 "Invasive Computing" (2010-2022), SFB 694, and multiple priority programs. He has coordinated large collaborative research efforts across Germany and internationally, with significant funding from DFG and other sources. His research group has produced influential work in embedded systems design and co-design methodologies. He leads the Hardware-Software Co-Design research group at FAU, which focuses on innovative approaches to embedded system design, invasive computing architectures, and efficient implementation of machine learning on resource-constrained devices. The group maintains strong collaborations with industry partners including Intel, Xilinx, and automotive companies.
Peng Gao is a Professor in the Department of Geography and the Environment at Syracuse University, affiliated with the Maxwell School of Citizenship and Public Affairs. His work bridges river geomorphology and urban geospatial analysis, leveraging GIS, remote sensing, and UAV technologies to address environmental and social challenges. Education: Ph.D., Physical Geography, State University of New York at Buffalo (2003) M.S., Physical Geography, Lanzhou University (1993) B.S., Solid Mechanics, Lanzhou University (1990) Professor Gao specializes in river morphodynamics—particularly in the Qinghai-Tibet Plateau—and geospatial applications for urban planning. His research examines braided/meandering river systems, peatland hydrology, and how urban built environments influence social inequities and public health outcomes through spatial analysis. His 2020-2024 publications reveal a dual focus: (1) fluvial processes in high-altitude regions (e.g., neck cutoff dynamics, braided river discharge estimation using Landsat), and (2) urban applications (e.g., green building design, lead poisoning exposure mapping). This reflects a strategic integration of field geomorphology with computational geospatial modeling. Professor Gao actively mentors through SOURCE undergraduate research grants and PhD committees. Current funded projects include peatland mapping in the Andean Altiplano, I-81 Viaduct impact analysis in Syracuse, and studies on urban built environments affecting childhood lead poisoning. His work utilizes UAVs for BVLOS operations and collaborates with Syracuse CoE on urban environmental simulations, emphasizing technical innovation in geospatial data acquisition and analysis.
Professor Richard Dance serves as Professor of Early English in the Department of Anglo-Saxon, Norse & Celtic (ASNC) at the University of Cambridge's Faculty of English, and is a Fellow of St Catharine's College where he holds positions as Director of Studies in ASNC, Praelector, and Clerk to the Governors of the Skerne Exhibition Foundation. He joined the university in 1997 after completing his studies at Oxford and has established himself as Cambridge's principal teacher of Old English, lecturing and supervising extensively in Old English language and literature and Germanic Philology for the ASNC Tripos. His research focuses on Old and Middle English language and literature with particular emphasis on Germanic Philology, English etymology, and the profound influence of Old Norse on early English vocabulary and poetic style. His work spans critical editions of texts like 'Ancrene Wisse' and 'Sir Gawain and the Green Knight', extensive etymological surveys of Scandinavian loanwords, and investigations into medieval multilingualism. His publications reveal consistent engagement with historical semantics, dialectology, and the linguistic interface between Norse and English during critical transition periods. Dance's scholarly impact is evidenced by major awards including the British Academy's 2021 Sir Israel Gollancz Prize for 'The Gersum Project' and the University of Cambridge Pilkington Prize for Excellence in Teaching (2023). His editorial roles include Secretary of the Early English Text Society, Council membership in The Philological Society, and etymological consultancy for the Oxford English Dictionary. As Principal Investigator for The Gersum Project (2016-2020), he led significant research into Scandinavian influence on English vocabulary, securing substantial academic recognition. British Academy's 2021 Sir Israel Gollancz Prize University of Cambridge Pilkington Prize for Excellence in Teaching (2023) Editorial Secretary, Early English Text Society Consultant for Oxford English Dictionary (etymology) International Advisory Committee member, Dictionary of Old English Dance maintains active leadership in academic communities through roles on the British Academy/Royal Historical Society Joint Committee on Anglo-Saxon Charters and as Series Editor for Exeter Medieval Texts and Studies (2008-24). His supervisory work encompasses graduate students in Old English language and literature, while his departmental responsibilities include Director of Studies for multiple Cambridge colleges. Current projects indicate ongoing research into medieval multilingualism, with several forthcoming publications addressing etymological methodology and lexical evolution in the medieval period.
Gianni Franchi is an assistant professor at ENSTA Paris , affiliated with the Computer Science and Systems Engineering Unit (U2IS) . His work focuses on theoretical deep learning , with a strong emphasis on uncertainty quantification, robustness, and explainability in machine learning models. Current affiliation: ENSTA Paris (U2IS) Academic rank: Assistant Professor Key collaborators: David Filliat, Emanuel Aldea, Andrei Bursuc, Antoine Manzanera His research spans uncertainty quantification , explainable AI , and reliable machine learning . He investigates methods like Bayesian neural networks, ensemble approaches, and deterministic uncertainty models. His work also addresses domain adaptation , self-supervised learning , and autonomous systems , particularly in trajectory forecasting and semantic segmentation for autonomous driving. Recent publications analyze probabilistic modeling for robustness, symmetry-aware Bayesian methods , and multi-modal datasets like InfraParis. He develops frameworks like Torch-Uncertainty and benchmarks such as MUAD for uncertainty types in autonomous driving. Key themes: Uncertainty Quantification Deep Learning Theory Autonomous Systems Explainable AI Dataset Creation Bayesian Methods
Serge O. Dumoulin is a Professor of Perception, Cognition, and Neuroscience at Utrecht University and Vrije Universiteit Amsterdam. He leads the Computational Cognitive Neuroscience and Neuroimaging group at the Netherlands Institute for Neuroscience and serves as Director of the Spinoza Centre for Neuroimaging , a collaborative facility involving KNAW, AMC, VUMC, and VU Amsterdam. Education: M.Sc. in Biology (Utrecht University), Ph.D. in Neurology and Neurosurgery (McGill University) Research focuses on the intersection of perception, cognition, and neuroimaging, particularly the human visual system. He employs ultra-high field (7T) fMRI, computational modeling, and behavioral studies to explore neural mechanisms of visual perception, attention, and numerical cognition. His work has applications in clinical disorders and methodological advancements like the pRF method, used globally in 100+ institutions. Publications span neuroscience, neuroimaging, and cognitive processes, with a 2023 Advances in MRI Technology paper emphasizing gray-matter optimized fMRI. His 2018 Neuroimage article discusses systematic pRF variations, while a 2021 PNAS study links divisive normalization to visual hierarchy. Awards: Ammodo KNAW Award (2015), NWO Vidi/Vici grants, Neuroimage Editors' Choice Award (2013) Teaching includes courses at Vrije Universiteit Amsterdam on perception, neuroscience, and fMRI data analysis. He emphasizes coding (Matlab/Python) in student internships.
Boris Buffoni is a Senior Lecturer at École Polytechnique Fédérale de Lausanne (EPFL) in the School of Basic Sciences, Institute of Mathematics, specifically within the Chair of Partial Differential Equations. He maintains his office at MA C2 605 (MA Building), Station 8, 1015 Lausanne, Switzerland, and can be contacted at boris.buffoni@epfl.ch or +41 21 693 49 87. His academic role spans both teaching responsibilities across multiple mathematics programs and active research in theoretical and applied mathematics. Dr. Buffoni's research program centers on the calculus of variations applied to Lagrangian and Hamiltonian systems, with significant contributions to optimal transportation in Lagrangian dynamics and hydrodynamics. His work explores semi-global minimization methods for quasi-linear elliptic variational problems and the variational approach to capillary-gravity water waves and their energetic stability. Additional research foci include local bifurcation and center-manifold theory for elliptic PDEs, the configurations of infinite elastic cylinders under compression or traction, and the analytic theory of global bifurcation with applications to gravity waves and their secondary bifurcations. The trajectory of his recent publications reveals a deepening focus on three-dimensional water wave phenomena, particularly steady rotational flows, gravity-capillary solitary waves, and advanced mathematical techniques for analyzing these complex systems. His 2025 publications demonstrate continued innovation in applying Kato's approach to locally coercive problems and developing the theoretical foundations of global bifurcation. The consistent application of variational methods and bifurcation theory across his work represents a unifying theme in addressing challenging problems in fluid dynamics and nonlinear partial differential equations. Dr. Buffoni has received research support including an EPSRC grant (GR/L41059) for work on 'Multibump localised solutions for spatially homogeneous partial differential equations,' reflecting the significance of his contributions to the field. His teaching portfolio at EPFL includes foundational courses such as Analysis II, Functional Analysis I, and Partial Differential Equations of Evolution, where he imparts knowledge of differential and integral calculus of real functions of several variables, linear functional analysis, and fundamental techniques for solving evolution equations.
Mikhail Gelfand is a Full Professor and Director of the Center for Molecular and Cellular Biology at Skolkovo Institute of Science and Technology (Skoltech), where he also serves as Vice President for Biomedical Research. His distinguished career spans multiple prestigious institutions including Lomonosov Moscow State University and the Higher School of Economics. His educational background includes: 1985: MSc in mathematics (functional analysis) 1993: PhD in physics-mathematics (biophysics) 1998: DSc in biology (molecular biology) 2007: full professor (bioinformatics) Professor Gelfand's research focuses on molecular evolution, comparative genomics, systems biology, and metagenomics. His work examines eukaryotic processes including alternative splicing, mRNA editing, and chromatin structure, as well as bacterial genome evolution and transcription regulation. His lab combines data on three-dimensional chromatin structure, epigenetic states, and gene expression to obtain an integrated view of genome functioning across diverse organisms from humans to amoebae. One major research direction focuses on the evolution of transcript splicing and editing, while comparative analysis of bacterial genomes yields functional annotations of novel enzymes, transporters, and transcription factors. His recent publications demonstrate a strong focus on RNA editing in cephalopods, bacterial genome analysis, and computational approaches to understanding chromatin structure. The work spans molecular biology, evolutionary biology, and bioinformatics, with particular emphasis on how RNA editing contributes to adaptation and molecular evolution across metazoans. His research shows how edited adenines are more frequently substituted with guanine in evolution than their unedited counterparts, suggesting RNA editing may enhance adaptation. His notable awards include: The President of Russian Federation's Award for Young Doctors of Science (2000) The "Best Scientist of the Russian Academy of Sciences" award (2004) A. A. Baev Prize in Genomics and Genoinformatics (2007) Member of Academia Europaea (2010) As Director of the Center for Molecular and Cellular Biology, Professor Gelfand leads a research group that combines computational and experimental approaches to study genome function and evolution. His lab's work has significant implications for understanding molecular mechanisms of evolution and adaptation across diverse biological systems, from bacteria to complex eukaryotes. His research on metagenomics extends to practical applications in areas including coral disease, aphids, and oil wells.
Jennifer E Miller is an Associate Professor of Medicine (General Internal Medicine) and Biomedical Informatics & Data Science at Yale School of Medicine. She serves as Co-Director of the Program for Biomedical Ethics and holds leadership positions including Director of the Good Pharma Scorecard (an index that ranks pharmaceutical companies on bioethical performance) and Founder of Bioethics International. Her academic appointments reflect her interdisciplinary expertise spanning clinical medicine, ethics, and data science. Dr. Miller's research program focuses on critical ethical dimensions of biomedical innovation, with particular emphasis on ethics, equity and governance in drug, vaccine, and medical device research, development, and accessibility. She specializes in developing metrics to enhance accountability and social responsibility in the pharmaceutical industry. Her work examines clinical trial diversity, international research ethics, healthcare data sharing, and the implementation of ethical frameworks in medical product development. Through the Good Pharma Scorecard initiative, she has created a systematic approach to evaluating pharmaceutical company performance across multiple ethical dimensions including clinical trial transparency, diversity in research participation, and access to medicines. Analysis of Dr. Miller's recent publications (2021-2025) reveals a strong thematic focus on diversity and equity in clinical research, with particular attention to demographic representation in trials, ethical considerations in international trial site selection, and equitable access to newly approved drugs and vaccines. Her work bridges bioethics, health policy, and data science, creating measurable frameworks for assessing ethical performance in the pharmaceutical industry. The interdisciplinary nature of her research connects clinical medicine, public health, and corporate accountability, with direct implications for regulatory policy and industry practice. Appointment to World Economic Forum Center for the Fourth Industrial Revolution, Precision Medicine Council (2019) Appointment to World Economic Forum Biotechnology Council (2018) Appointment to World Economic Forum Futures Council (2017) Appointment to World Economic Forum Human Enhancement Working Group (2017) Fellow at Foundation Brocher for Ethical Issues in Global Population Health (2014) As Director of the Good Pharma Scorecard and Founder of Bioethics International, Dr. Miller leads initiatives that connect academic research with practical applications in industry ethics. Her work involves collaboration with pharmaceutical companies, regulatory agencies, and patient advocacy groups to develop and implement ethical standards in biomedical innovation. Through editorial roles at journals including Nature Medicine, The BMJ, and JAMA, she influences discourse on research ethics and scientific integrity. Dr. Miller is actively involved in advising and mentorship through her academic appointments at Yale, where she contributes to training the next generation of researchers in biomedical ethics and data science.
Andrew Riseman serves as an Associate Professor in the Department of Applied Biology within the Faculty of Land and Food Systems at the University of British Columbia. His academic work bridges sustainable agricultural systems, plant breeding, and educational innovation, with particular emphasis on integrated crop-livestock models and urban farming applications. His educational background includes: PhD from Pennsylvania State University (1997) MSc from Pennsylvania State University (1990) BSc from Pennsylvania State University (1984) Riseman's research program investigates plant genetics for sustainable production systems, focusing on intercrop interactions, nutrient use efficiency, root physiology, and biotic/abiotic stress resistance. He develops germplasm specifically for multi-trophic production environments and urban agriculture contexts. Complementing his biological research, he actively engages in the Scholarship of Teaching and Learning and Community Based Action Research, with interests in critical thinking pedagogy and technology-enhanced educational environments. Analysis of his 2011-2015 publications reveals consistent investigation into intercropping dynamics (wheat-bean, barley-pea), nutrient cycling, and water management across diverse cropping systems. Key contributions include evaluations of organic production methods, root architecture variation, and sustainable rice intensification techniques, demonstrating a systems-oriented approach to agroecological challenges. No scientific awards or honors were documented in the provided source material. As a graduate supervisor, Riseman mentors students in UBC's Integrated Studies in Land and Food Systems and Plant Science programs. His research portfolio includes funded projects on bioactive agricultural formulations, plant genetics in intercropping systems, and nitrogen source evaluations in organic production. Educational grants have supported his development of computer simulations for plant breeding education and scaffolded experiential learning initiatives within Land and Food Systems curriculum. Riseman maintains active affiliation with the Centre for Sustainable Food Systems at UBC Farm and the Diversified Agroecosystem Cluster. He champions the UBC Farm as a vital academic resource for sustainable food system research, teaching, and community outreach, viewing its continued evolution as essential to advancing land and food systems scholarship.
Uwe Jun is a Professor of Political Science specializing in the Political System of the Federal Republic of Germany at the University of Trier, where he has held his position since 2005. He served as Dean of Faculty III (Political Science) from 2011 to 2017 and has frequently taught at Södertörns Högskola in Stockholm, Sweden since 2009. His academic affiliations include membership in the European Consortium for Political Research (ECPR), German Political Science Association (DVPW), and Association for Parliamentary Affairs. Professor Jun's research focuses on party research, comparative parliamentary research, federalism, political communication, and coalition research. His work centers on German political parties and systems, with particular emphasis on party system evolution, subnational politics, and the changing dynamics of traditional Volksparteien. He has published extensively on topics including party organization, electoral behavior, political representation, and the impact of federalism on party competition. His recent publications (2023-2025) reveal a strong focus on analyzing the transformation of the German party system, with particular attention to subnational party systems across Germany's 16 states. His work examines the decline of traditional Volksparteien (SPD and CDU), the evolving role of smaller parties, and the regional variations in party competition. Jun frequently collaborates with researchers like Marius Minas, Anna-Sophie Heinze, and Torsten Oppelland on comprehensive studies of German party politics. Professor Jun serves as spokesperson for the Working Group 'Party Research' of the German Political Science Association since 2005 and is editor of the academic series 'Parties in Theory and Empirical Studies' and 'Publication Series Politics and Communication.' He has been an active member of numerous appointment committees and serves as a reviewer for various scientific journals. His expertise is frequently sought in media interviews and expert discussions on German politics. Before joining the University of Trier, Professor Jun taught and researched at the universities of Göttingen, Würzburg, the Free University of Berlin, Potsdam, and Harvard University in the USA, establishing a strong international academic profile in comparative party politics.